Inhibitory effects of constituents ofGastrodia elata Bl. on glutamate-induced apoptosis in IMR-32 human neuroblastoma cells

被引:0
作者
Yong Soo Lee
Jeoung-Hee Ha
Chul Soon Yong
Dong-Ung Lee
Keun Huh
Young Shin Kang
Sun Hee Lee
Mi-Wha Jung
Jung-Ae Kim
机构
[1] Kwandong University,Department of Physiology, College of Medicine
[2] Yeungnam University,Department of Pharmacology, College of Medicine
[3] Yeungnam University,College of Pharmacy
[4] Dongguk University,Department of Biochemistry, College of Natural Science
来源
Archives of Pharmacal Research | 1999年 / 22卷
关键词
Human neuroblastoma cells; Vanillin; -Hydroxybenzaldehyde; Epilepsy; Glutamate; Apoptosis; Intracellular Ca;
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摘要
The inhibitory effects of the constituents ofGastrodia elata Bl. (GE) on glutamate-induced apoptosis in human neuronal cells were investigated using IMR32 human neuroblastoma cells. Glutamate (GLU) induced DNA fragmentation, a hallmark of apoptosis, in a dose-dependent manner. GLU also induced a slow and sustained increase in intracellular Ca2+ concentration. Treatment with EGTA, an extracellular Ca2+ chelator, in a nominal Ca2+-free buffer solution abolished the GLU-induced intracellular Ca2+ increase, indicating that GLU stimulated Ca2+ influx pathway in the IMR32 cells. BAPTA, an intracellular Ca2+ chelator, significantly inhibited the GLU-induced apoptosis assessed by the flow cytometry measuring hypodiploid DNA content indicative of apoptosis, implying that intracellular Ca2+ rise may mediate the apoptotic action of GLU. Vanillin (VAN) and p-hydroxybenzaldehyde(p-HB), known constituents of GE, significantly inhibited both intracellular Ca2+ rise and apoptosis induced by GLU. These results suggest that the apoptosis-inhibitory actions of the constituents of GE may account, at least in part, for the basis of their antiepileptic activities. These results further suggest that intracellular Ca2+ signaling pathway may be a molecular target of the constituents of GE.
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页码:404 / 409
页数:5
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